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Coded multipulse pulse-position modulation for free-space optical communications

机译:用于自由空间光通信的编码多脉冲脉冲位置调制

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摘要

In this letter, we address two questions concerning the application of multipulse pulse-position modulation (MPPM) for free-space optical (FSO) communications: (1) under what condition would MPPM offer a notable advantage over conventional pulse-position modulation (PPM), and (2) what practical coding scheme should be used to realize that advantage. Focusing on bandwidth-efficient FSO transmission, we find decimated MPPM constellations which are suitable for combining with binary codes and offer significant gains in terms of constellationconstrained capacity over PPM under simultaneous peak-power, average-power, and bandwidth constraints. We then consider labeling design for the popular bit-interleaved coded modulation (BICM) and devise a new multilevel coding (MLC) architecture for MPPM, which we refer to as reduced-layer MLC (RLMLC). Considering the Poisson FSO channel model as a relevant example, we provide simulative evidence that RL-MLC MPPM with off-the-shelf low-density parity-check codes can outperform any PPM scheme under the same transmission constraints.
机译:在这封信中,我们解决了两个有关多脉冲脉冲位置调制(MPPM)在自由空间光(FSO)通信中的应用的问题:(1)在什么条件下MPPM会比常规脉冲位置调制(PPM)显着优势),以及(2)应该使用哪种实用的编码方案来实现这一优势。着眼于带宽高效的FSO传输,我们发现适合于与二进制代码组合的抽取后的MPPM星座图,并且在同时受到峰值功率,平均功率和带宽约束的情况下,星座图在PPM上的容量受到限制,因此具有显着的收益。然后,我们考虑为流行的比特交织编码调制(BICM)设计标签设计,并为MPPM设计一种新的多级编码(MLC)体系结构,我们将其称为精简层MLC(RLMLC)。以Poisson FSO信道模型为例,我们提供了模拟证据,表明在相同的传输约束下,带有现成的低密度奇偶校验码的RL-MLC MPPM可以胜过任何PPM方案。

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